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Analysis and design of demountable steel column-baseplate connections

机译:可拆卸钢柱-底板连接的分析与设计

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This paper aims to investigate the demountability of steel column-baseplate connections subjected to monotonic and cyclic loading. This paper presents the finite element analysis of steel column-baseplate connections under monotonic and cyclic loading. The finite element model takes into account the effects of material and geometric nonlinearities. Bauschinger and pinching effects were also included in the developed model, through which degradation of steel yield strength in cyclic loading can be well simulated. The results obtained from the finite element model are compared with the existing experimental results. It is demonstrated that the finite element model accurately predicts the initial stiffness, ultimate bending moment strength of steel column-baseplate connections. The finite element model is utilised to examine the effects of axial load, baseplate thickness, anchor bolt diameter and position on the behaviour of steel column-baseplate connections. The effects of various parameters on the demountability of steel column-baseplate connections are investigated. To achieve a demountable and reusable structure, various design parameters need to be considered. Initial stiffness and moment capacity of steel column-baseplate connections are compared with design strengths from Eurocode 3. The comparison between finite element analysis and Eurocode 3 indicates that predictions of initial stiffness for semi-rigid connections should be developed and improved design of the connections needs to be used in engineering practice.
机译:本文旨在研究承受单调和循环载荷的钢柱-底板连接件的可拆卸性。本文提出了单调和循环荷载作用下钢柱-底板连接的有限元分析。有限元模型考虑了材料和几何非线性的影响。包辛格效应和收缩效应也包括在开发的模型中,通过该模型可以很好地模拟循环荷载下钢屈服强度的下降。从有限元模型获得的结果与现有的实验结果进行了比较。结果表明,有限元模型可以准确预测钢柱-底板连接的初始刚度,极限弯矩强度。有限元模型用于检查轴向载荷,基板厚度,地脚螺栓直径和位置对钢柱-基板连接性能的影响。研究了各种参数对钢柱-底板连接件可拆卸性的影响。为了实现可拆卸和可重复使用的结构,需要考虑各种设计参数。将钢柱底板连接的初始刚度和弯矩能力与欧洲规范3的设计强度进行了比较。有限元分析与欧洲规范3的比较表明,应开发半刚性连接的初始刚度预测,并改进连接设计需求在工程实践中使用。

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